Home
Class 12
PHYSICS
if in a nuclear fusion reaction, mass de...

if in a nuclear fusion reaction, mass defect to 0.3% , then energy released in fusion of 1 kg mass

A

`27xx10^10` J

B

`27xx10^11` J

C

`27xx10^12` J

D

`27xx10^13` J

Text Solution

Verified by Experts

The correct Answer is:
D

Here, `Deltam`=0.3% of 1 kg
`=0.3/100 kg =3xx10^(-3)` kg
`therefore E=(Deltam) c^2=3xx10^(-3)xx(3xx10^8)^2=27xx10^13` J
Promotional Banner

Topper's Solved these Questions

  • NUCLEI

    NCERT FINGERTIPS|Exercise Radioactivity|42 Videos
  • NUCLEI

    NCERT FINGERTIPS|Exercise Nuclear Energy|10 Videos
  • NUCLEI

    NCERT FINGERTIPS|Exercise Size Of The Nucleus|6 Videos
  • MOVING CHARGES AND MAGNETISM

    NCERT FINGERTIPS|Exercise Assertion And Reason|15 Videos
  • PRACTICE PAPPER

    NCERT FINGERTIPS|Exercise Practice Paper 3|50 Videos

Similar Questions

Explore conceptually related problems

During a nuclear fusion reaction,

The mass defect is 0.5% in a nuclear fusion reaction. Find the energy released in the fusion of 5 kg mass.

In nuclear fission , 0.1% mass in converted into energy. The energy released in the fission of 1 Kg mass is

In a nuclear reation, the mass defect is 1atomic mass unit. What is the energy released ?

The mass defect in a nuclear fusion reaction is 0.3%. What amount of energy will be liberted in one kg fusion reaction.

The mass defect in a nuclear fusion reaction is 0.05%. What amount of energy will be liberated in one kg fusion reaction

In a nuclear fusion reaction, if the energy is released then

Energy released in fusion of 1 kg of deuterium nuclei.